LITEX S X 1009 is an aqueous colloidal dispersion of a styrene-butadiene copolymer with carboxyl groups. LITEX S X 1009 contains an anionic emulsifier system.

Available Documents

TDS Download

Technical Informations

Application Advice/Typical Applications

LITEX S X 1009 is protected against bacterial attack during storage. In the manufacture of finished products, the material has to be re-treated, as usual, with suitable agents to give enhanced preservation.LITEX S X 1009 is used mainly to impregnate paper and fabrics or to bind fibres or powdery materials of all types. LITEX S X 1009 has a good mechanical stability. LITEX S X 1009 is compatible with other anionically stabilized dispersions. All the thickening agents normally used in the latex-processing industry, e.g. methyl cellulose, carboxymethyl cellulose, alginates, polyvinyl alcohols and salts of poly(meth)acrylic acid, are suitable for use in conjunction with LITEX S X 1009. The described goods are dried at 120 - 150 °C.

Shipping and Storage

Store at an even temperature of between +5°C and +35°C avoiding frost and direct sunlight. Stir product before use. If stored according to these conditions and in the original unopened containers, the dispersion will be stable for 6 months following delivery. Product should be used as soon as possible after opening. During processing, storage and transport, avoid any contact with metals (including non-ferrous metals) which are not protected against corrosion. Detailed information is available on request.

Product Security/Health and Safety

Before handling, please read the Safety Data Sheet of this product for advice on safety, use and disposal.

Effluents and Pollution Control

Before handling, please read the Safety Data Sheet of this product for advice on safety, use and disposal.

For further information regarding this product please refer to:

Voss, Michael
Phone: +49 (0)2365-49-9773
FAX: +49 (0)2365-49-6510


Character Value Unit
Solids Content 50,0
pH Value 6,5  
Viscosity < 400 mPa s 
Surface Tension 42 mN/m 
Glass Transition Temperature 0 °C 

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